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Evolutionary Design of Gene Networks: Forced Evolution by Genomic Parasites

机译:基因网络的进化设计:基因组寄生虫的强迫进化。

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摘要

The co-evolution of species with their genomic parasites (transposons) is thought to be one of the primary ways of rewiring gene regulatory networks (GRNs). We develop a framework for conducting evolutionary computations (EC) using the transposon mechanism. We find that the selective pressure of transposons can speed evolutionary searches for solutions and lead to outgrowth of GRNs (through co-option of new genes to acquire insensitivity to the attacking transposons). We test the approach by finding GRNs which can solve a fundamental problem in developmental biology: how GRNs in early embryo development can robustly read maternal signaling gradients, despite continued attacks on the genome by transposons. We observed co-evolutionary oscillations in the abundance of particular GRNs and their transposons, reminiscent of predator-prey or hostparasite dynamics.
机译:物种与其基因组寄生虫(转座子)的共同进化被认为是重新连接基因调控网络(GRN)的主要方法之一。我们开发了一个使用转座子机制进行进化计算(EC)的框架。我们发现转座子的选择性压力可以加快进化解决方案的搜索,并导致GRN的生长(通过共同选择新基因来获得对攻击性转座子的不敏感性)。我们通过寻找可以解决发育生物学中基本问题的GRN来测试该方法:尽管转座子对基因组的持续攻击,早期胚胎发育中的GRN如何能够稳健地读取母体信号梯度。我们观察到大量特定GRN及其转座子的共同进化振荡,让人联想到捕食者-猎物或宿主寄生物的动力学。

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